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Changes induced by hyperosmotic mannitol in cerebral endothelial cells: an atomic force microscopic study

机译:高渗甘露醇诱导的脑内皮细胞变化:原子力显微镜研究

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Understanding the reaction of living cells in response to different extracellular stimuli, such as hyperosmotic stress, is of primordial importance. Mannitol, a cell-impermeable non-toxic alcohol, has been used successfully for reversible opening of the blood-brain barrier in hyperosmotic concentrations. In this study we analyzed the effect of hyperosmotic mannitol on the shape and surface structure of living cerebral endothelial cells by atomic force microscope imaging technique. Addition of clinically relevant concentrations of mannitol to the culture medium of the confluent cells induced a decrease of about 40% in the observed height of the cells. This change was consistent both at the nuclear and peripheral region of the cells. After mannitol treatment even a close examination of the contact surface between the cells did not reveal gap between them. We could observe the appearance of surface protrusions of about 100 nm. By force measurements the elasticity of the cells were estimated. While the Young's modulus of the control cells appeared to be 8.04 +/- 0.12 kPa, for the mannitol-treated cells it decreased to an estimated value of 0.93 +/- 0.04 kPa which points to large structural changes inside the cell.
机译:了解活细胞对不同细胞外刺激(例如高渗应激)的反应至关重要。甘露醇是一种不可渗透细胞的无毒酒精,已成功用于高渗透浓度的血脑屏障的可逆打开。在这项研究中,我们通过原子力显微镜成像技术分析了高渗甘露醇对活脑血管内皮细胞形状和表面结构的影响。将临床相关浓度的甘露醇添加到汇合细胞的培养基中,导致观察到的细胞高度降低约40%。这种变化在细胞的核和周边区域都是一致的。甘露醇处理后,即使仔细检查细胞之间的接触表面也没有发现它们之间的间隙。我们可以观察到约100 nm的表面突起的外观。通过力的测量,估计细胞的弹性。虽然对照细胞的杨氏模量似乎为8.04 +/- 0.12 kPa,但对于甘露醇处理的细胞,它降低至0.93 +/- 0.04 kPa的估计值,这表明细胞内部发生了较大的结构变化。

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